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Climate Controlled Seat System: Notes

WARNING: This page is about a different car, the 2014 Ford F-150. However, it is still accessible from the selected car via links, so may be relevant.
NOTE: Avoid applying voltage directly to a Thermo-Electric Device (TED) for testing its operation. Doing so may cause damage to the TED  .
NOTE: When installing a new Dual Climate Controlled Seat Module (DCSM), it is necessary to carry out Programmable Module Installation (PMI). Refer to MODULE CONFIGURATION .

Both the driver and front passenger climate controlled seats are independently controlled electronically by the DCSM  mounted to the bottom of the passenger seat cushion. The climate controlled seat system only operates with the engine running. However, if a scan tool is used to command the DCSM  , diagnostic testing can be carried out with the ignition ON engine OFF in 15 second durations.

If one of the voltage supply circuits opens, both seats will remain operational because the circuits are connected internally in the DCSM  .

If a fault occurs and sets a DTC specific to either climate controlled seat, only the affected seat is disabled by the module. If the system shuts down due to a DTC fault, cycling the ignition to OFF and then ON again resets the DCSM  to function until the DTC sets again.

When the climate control seat buttons are activated on the touchscreen interface, the Accessory Protocol Interface Module (APIM) sends the climate controlled seat commands to the Front Controls Interface Module (FCIM) using the Infotainment Controller Area Network (I-CAN). The FCIM sends the request message to the Instrument Panel Cluster (IPC) using the I-CAN  . The IPC  sends the request message to the Body Control Module (BCM) over the High Speed Controller Area Network (HS-CAN). Finally, the BCM  sends the climate controlled seat commands to the DCSM  using the MS-CAN  .

Each driver and front passenger seat cushion and backrest is equipped with a Thermo-Electric Device (TED) and blower motor assembly. Applying voltage to the TED  in one direction causes it to heat. Applying voltage polarity in the opposite direction causes the TED  to cool. Cabin air is drawn through the blower and distributed to each of the TED  modules located in the seat cushion and backrest. The TEDs  then heat or cool the incoming air depending on the control switch settings. The air is then directed into the foam pad and manifold where it is distributed along the surface of the cushion and backrest of the seat. Once activated, the DCSM  maintains the heating/cooling modes until deactivated.

The temperature differences between the individual heated and cooled settings is minimal. For example, it is difficult to distinguish between LOW cool and MED cool settings. Measuring seat temperature at different settings is possible by monitoring the DCSM  PIDs using the scan tool.